Area of research
Biomedical Engineering · Mechanical Engineering
Research interest
Research focused on Scalar (mathematics) and Photoexcitation, with related work in Transdermal, Energy harvesting, Diffraction. Notable publications include 'Efficient full-path optical calculation of scalar and vector diffraction using the Bluestein method', 'Ultrafast Carrier Dynamics of Dual Emissions from the Orthorhombic Phase in Methylammonium Lead Iodide Perovskites Revealed by Two-Dimensional Coherent Spectroscopy', and 'Dual engine-driven bionic microneedles for early intervention and prolonged treatment of Alzheimer's disease'.
Exploring human motions for smart wearables: Energy conversion, harvesting and self–powered sensing
Dual engine-driven bionic microneedles for early intervention and prolonged treatment of Alzheimer's disease
Efficient full-path optical calculation of scalar and vector diffraction using the Bluestein method
Ultrafast Carrier Dynamics of Dual Emissions from the Orthorhombic Phase in Methylammonium Lead Iodide Perovskites Revealed by Two-Dimensional Coherent Spectroscopy